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A finite-difference time-domain beam-propagation method for TE- and TM-wave analyses

机译:TE波和TM波分析的时域有限差分传播方法

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摘要

The application of the existing time-domain beam-propagation method (TD-BPM) based on the finite-difference (FD) formula has been limited to the TE-mode analysis. To treat the TM mode as well as the TE mode, an improved TD-BPM is developed using a low-truncation-error FD formula with the aid of the alternating-direction implicit scheme. To improve the accuracy in time, a Pade (2,2) approximant is applied to the time axis. Although the truncation error in time is found to be O(/spl Delta/t/sup 2/), as in the case of the Pade (1,1) approximant, this method allows us to use a large time step. A substantial reduction in CPU time is found when compared to the conventional method in which a broadly banded matrix is solved by the Bi-CGSTAB. The effectiveness in evaluating the TE- and TM-mode waves is shown through the analysis of the power reflectivity from a waveguide facet. This method is also applied to the analysis of a waveguide grating. The accuracy and efficiency of the TD-BPM are assessed in comparison with the finite-difference time-domain method.
机译:基于有限差分(FD)公式的现有时域波束传播方法(TD-BPM)的应用仅限于TE模式分析。为了处理TM模式和TE模式,借助于交替方向隐式方案使用低截断误差FD公式开发了改进的TD-BPM。为了提高时间准确性,将Pade(2,2)近似值应用于时间轴。尽管发现时间上的截断误差为O(/ spl Delta / t / sup 2 /),但与Pade(1,1)近似的情况一样,该方法允许我们使用较大的时间步长。与通过Bi-CGSTAB解决宽带矩阵的常规方法相比,CPU时间大大减少。通过分析波导端面的功率反射率,可以看出评估TE和TM模式波的有效性。该方法也适用于波导光栅的分析。与时域有限差分法相比,评估了TD-BPM的准确性和效率。

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